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Q.Explain Werner's theory of coordination compounds with suitable examples.

Andhra Pradesh BieapBIEAP Intermediate Board 2025Subjective· 4mImportance★★★★★
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Werner's theory postulates two kinds of valency for a metal in a coordination compound — a primary (ionisable) valency and a secondary (non-ionisable, directional) valency that fixes the compound's geometry.

Alfred Werner (1898) proposed the first successful theory of coordination compounds, based on studying series of complexes like CoCl3.6NH3, CoCl3.5NH3, CoCl3.4NH3, etc. His postulates are:

  1. In coordination compounds, metals show two types of linkages (valencies) — primary and secondary.

  2. Primary valencies are normally ionisable and are satisfied by negative (anionic) ions. They correspond to the oxidation state of the metal. Primary valency is non-directional.

  3. Secondary valencies are non-ionisable. They are satisfied either by neutral molecules (like NH3, H2O) or by negative ions. The secondary valency is fixed for a metal and is equal to its coordination number. Secondary valency is directional — it determines the geometrical shape of the coordination entity (octahedral, tetrahedral, square planar, etc.).

  4. To satisfy both primary and secondary valencies, an ion may satisfy both simultaneously.

Examples:

  • CoCl3.6NH3 → [Co(NH3)6]Cl3: Co3+ has primary valency 3 (satisfied by the 3 Cl− ions, which are ionisable and precipitate readily with AgNO3) and secondary valency 6 (satisfied by 6 NH3 molecules, non-ionisable, bound directly to Co). All 6 NH3 occupy the 6 positions of an octahedron around Co.

  • CoCl3.5NH3 → [Co(NH3)5Cl]Cl2: here one Cl− has moved inside the coordination sphere to satisfy part of the secondary valency (along with 5 NH3), while the remaining 2 Cl− (outside the coordination sphere) satisfy the primary valency and are ionisable.

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